首页> 外文期刊>Physical review. B, Condensed Matter And Materials Physics >Evolution of low-energy spin dynamics in the electron-doped high-transition-temperature superconductor Pr_(0.88)LaCe_(0.2)CuO_(4-δ)
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Evolution of low-energy spin dynamics in the electron-doped high-transition-temperature superconductor Pr_(0.88)LaCe_(0.2)CuO_(4-δ)

机译:电子掺杂高转变温度超导体Pr_(0.88)LaCe_(0.2)CuO_(4-δ)中低能自旋动力学的演变

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摘要

We use inelastic neutron scattering to explore the evolution of the low energy spin dynamics in the electron-doped cuprate Pr_(0.88)LaCe_(0.2)CuO_(4-δ) (PLCCO) as the system is tuned from its nonsuperconducting, as-grown antiferromagnetic (AF) state into an optimally doped superconductor (T_c ≈ 24 K) without static AF order. The low-temperature, low-energy response of the spin excitations in underdoped samples is coupled to the presence of the AF phase, whereas the low-energy magnetic response for samples near optimal T_c exhibits spin fluctuations surprisingly insensitive to the sample temperature. This evolution of the low-energy excitations is consistent with the influence of a quantum critical point in the phase diagram of PLCCO associated with the suppression of the static AF order. We carried out scaling analysis of the data and discuss the influence of quantum critical dynamics in the observed excitation spectrum.
机译:我们使用非弹性中子散射来探索电子掺杂的铜酸盐Pr_(0.88)LaCe_(0.2)CuO_(4-δ)(PLCCO)中低能自旋动力学的演化,因为该系统是从其非超导,生长态调谐而来的反铁磁(AF)状态变为最佳掺杂超导体(T_c≈24 K),而没有静态AF阶。掺杂不足的样品中自旋激发的低温,低能响应与AF相的存在有关,而接近最佳T_c的样品的低能磁响应表现出令人惊讶的对样品温度不敏感的自旋涨落。低能激发的这种演变与PLCCO相图中量子临界点的影响与静态AF阶的抑制有关。我们对数据进行了定标分析,并讨论了量子临界动力学在观察到的激发光谱中的影响。

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